DocumentCode :
1925934
Title :
AC induction servo sizing for motion control application via loss minimizing real-time flux control
Author :
Lorenz, Robert D. ; Yang, Sheng Ming
Author_Institution :
Wisconsin Univ., Madison, WI, USA
fYear :
1989
fDate :
1-5 Oct. 1989
Firstpage :
612
Abstract :
A design procedure is presented for induction machine servo motion control applications. The approach can be used to select the minimum size machine optimally and/or to obtain optimal time performance from a given machine. The reduced-form outcome of the procedure lends itself to real-time implementation in the induction servodrive. The basis of the technique is in modeling and controlling of machine losses. The model is prepared so that trajectory modifications can be made on-site and their effects are properly accounted for in a revised optimal flux trajectory. Theoretical and experimental results demonstrate substantial performance advantages from such an approach. The validity of the design optimization was investigated experimentally on a feed-forward, field-oriented induction servo drive.<>
Keywords :
induction motors; magnetic flux; magnetic variables control; position control; servomotors; AC induction servo; feed-forward; field-oriented induction servo drive; loss minimizing real-time flux control; motion control application; optimal time performance; Core loss; Design optimization; Dynamic programming; Eddy currents; Feeds; Induction machines; Magnetic hysteresis; Magnetic losses; Motion control; Servomechanisms;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Industry Applications Society Annual Meeting, 1989., Conference Record of the 1989 IEEE
Conference_Location :
San Diego, CA, USA
Type :
conf
DOI :
10.1109/IAS.1989.96713
Filename :
96713
Link To Document :
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